Genome-wide identification, phylogenetic and expression analysis of the maize HECT E3 ubiquitin ligase genes

被引:0
作者
Yunfeng Li
Lihong Zhai
Jingsheng Fan
Jiaxin Ren
Wenrong Gong
Xin Wang
Jun Huang
机构
[1] South China Agricultural University,Guangdong Provincial Key Laboratory of Plant Molecular Breeding
[2] Hubei University of Arts and Science,Medical College
[3] South China Agricultural University,College of Agriculture
来源
Genetica | 2019年 / 147卷
关键词
HECT E3 ubiquitin ligase; L.; Zm; Gene expression;
D O I
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中图分类号
学科分类号
摘要
HECT (homologous to the E6AP carboxyl terminus) ubiquitin ligase genes (E3s) are enzymes with diverse functions influencing plant growth, development, and responses to abiotic stresses. However, there is relatively little information available regarding the maize HECT E3 gene family. In the present study, 12 maize HECT E3 genes (ZmUPL1 to ZmUPL12) were identified at the whole-genome level. The phylogenetic relationships, structures, and expression levels of the maize HECT E3 genes were then analyzed. On the basis of the constructed maximum likelihood phylogenetic tree, the HECT E3 genes were divided into six groups. The quantitative real-time polymerase chain reaction assay results revealed that all of the maize ZmUPL genes were expressed in most of the examined tissues and were responsive to three abiotic stresses. Considered together, the study results may provide a useful foundation for future investigations of maize stress-tolerance genes as well as functional analyses of the E3 enzymes in diverse agriculturally important crop species.
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页码:391 / 400
页数:9
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[1]  
Bates PW(1999)1 and 2, two 405 kDa ubiquitin-protein ligases from Plant J 20 183-195
[2]  
Vierstra RD(2008) related to the HECT-domain protein family Cancer Cell 14 10-21
[3]  
Bernassola F(2013)The HECT family of E3 ubiquitin ligases: multiple players in cancer development Bioinformatics 29 1696-1697
[4]  
Karin M(2013)MEME-LaB: motif analysis in clusters PLoS ONE 8 e79577-244
[5]  
Ciechanover A(2014)A seed preferential heat shock transcription factor from wheat provides abiotic stress tolerance and yield enhancement in transgenic arabidopsis under heat stress environment Genome Biol 15 414-308
[6]  
Melino G(2012)Discovery of novel transcripts and gametophytic functions via RNA-seq analysis of maize gametophytic transcriptomes Plant Cell 24 233-742
[7]  
Brown P(2010)Arabidopsis ubiquitin conjugase Mol Plant Pathol 11 293-1797
[8]  
Baxter L(2003) is an ERAD component that functions in brassinosteroid-mediated salt stress tolerance Plant J 35 729-3788
[9]  
Hickman R(2004)The ubiquitin/26S proteasome system in plant-pathogen interactions: a never-ending hide-and-seek game Nucleic Acids Res 32 1792-34
[10]  
Beynon J(2003)The HECT ubiquitin-protein ligase (UPL) family in Arabidopsis: Nucleic Acids Res 31 3784-5943